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NANMAC is QUALITY PERFORMANCE SOLUTIONS NANMAC is QUALITY PERFORMANCE SOLUTIONS
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Nanmac Corp. was established in 1956 by a group of scientists to develop high-performance temperature sensors “Right-Angle” Ribbon “Eroding” Thermocouple A12D Series – Ultra High Temp Multi-Function Sensors
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“Right-Angle” Ribbon “Eroding” Thermocouple A12D Series – Ultra High Temp Multi-Function Sensors Nanmac Corp. was established in 1956 by a group of scientists to develop high-performance temperature sensors Initial focus was on Government research & Military applications.
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“Right-Angle” Ribbon “Eroding” Thermocouple A12D Series – Ultra High Temp Multi-Function Sensors Nanmac Corp. was established in 1956 by a group of scientists to develop high-performance temperature sensors Initial focus was on Government research & Military applications. Many of these have become commercial applications – plastics, materials evaluation, heat transfer studies, incineration
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A12D Series – Ultra High Temp “Right-Angle” Ribbon “Eroding” Thermocouple A12D Series – Ultra High Temp Multi-Function Sensors Nanmac Corp. was established in 1956 by a group of scientists to develop high-performance temperature sensors Initial focus was on Government research & Military applications. Many of these have become commercial applications – plastics, materials evaluation, heat transfer studies, incineration Nanmac holds various patents on temperature sensors, erosion gages and “multi- function” sensors
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“Eroding” Thermocouple 5 Layer construction 3 layers are very thin electrical insulators 2 layers are thermocouple alloy ribbon
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All 5 layers are pressed between a split insert 5 Layer construction 3 layers are very thin electrical insulators 2 layers are thermocouple alloy ribbon “Eroding” Thermocouple
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Entire assembly is then inserted into the required housing 5 Layer construction 3 layers are very thin electrical insulators 2 layers are thermocouple alloy ribbon All 5 layers are pressed between a split insert “Eroding” Thermocouple
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Housing can be made from any material to match the thermal properties of the test material – in almost any shape Entire assembly is then inserted into the required housing 5 Layer construction 3 layers are very thin electrical insulators 2 layers are thermocouple alloy ribbon All 5 layers are pressed between a split insert “Eroding” Thermocouple
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Entire assembly is then inserted into the required housing 5 Layer construction 3 layers are very thin electrical insulators 2 layers are thermocouple alloy ribbon All 5 layers are pressed between a split insert Housing can be made from any material to match the thermal properties of the test material – in almost any shape “Eroding” Thermocouple Thermocouple junction is formed by grinding motion across the layers Junction is microscopic, continued grinding forms new junctions Junction is microscopic, continued grinding forms new junctions Grinding motion can be from shaping, ablation, wear, etc…
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Patented design “Eroding” Thermocouple
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Patented design Microsecond response time “Eroding” Thermocouple
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Patented design Microsecond response time Thermal device can be made from most any material, in most any shape: Graphite, steel, plastic, phenolic, rubber, wood “Eroding” Thermocouple
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Patented design Microsecond response time Thermal device can be made from most any material, in most any shape: Graphite, steel, plastic, phenolic, rubber, wood Temperatures to over 2300 O C “Eroding” Thermocouple
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Patented design Microsecond response time Thermal device can be made from most any material, in most any shape: Graphite, steel, plastic, phenolic, rubber, wood Temperatures to over 2300 O C Pressures to over 25,000 psi “Eroding” Thermocouple
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Patented design Microsecond response time Thermal device can be made from most any material, in most any shape: Graphite, steel, plastic, phenolic, rubber, wood Temperatures to over 2300 O C Pressures to over 25,000 psi Available in all thermocouple calibrations, including Type B & C “Eroding” Thermocouple
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Unique performance characteristics Millisecond & Microsecond response time 2 dimension thermal junction, exact location placement Sensing device can wear or “erode” up to 0.375” and continue to measure – even during erosion Research applications include: Rocket nozzle blast temperatures * Interface measurements between moving surfaces – brake pads, piston walls, bearings Ablation studies 4 of 7 “Eroding” thermocouples – all 7 mounted flush to inside of nozzle “Eroding” Thermocouples for Research *
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Unique performance characteristics Sensing device can be machined to match wall contours Distinct temperature of interest can be provided: the wall surface temperature (thermally grounded), or the interface { gas, flame, friction } temperature at the wall surface (thermally isolated) Additional research applications include: Shockwave measurements ** Projectiles and Gun barrel breaches Explosions Squibs and Igniters P T P = pressure, ~ 1000 psi T = temperature, ~ 650 Deg F ** Timing marks equal 2 milliseconds “Eroding” Thermocouples for Research
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Unique performance characteristics True plastic temperatures, unaffected by mold wall heat- sink Sensor can can be shaped or machined to match wall surface contours – Mold walls, cylinder, manifolds, bearings Multiple sensors can be located within a single housing with exact positioning Industrial applications include: Plastic processing Thermal modeling Combustion gases in diesel engines Moving wires or textiles Brake lining interface temps “Eroding” Thermocouples for Industry
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“Right-Angle” Ribbon Thermocouple Patented design
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Millisecond Response time “Right-Angle” Ribbon Thermocouple
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Patented design Millisecond Response time Pressures to over 50,000 psi. “Right-Angle” Ribbon Thermocouple
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Patented design Millisecond Response time Pressures to over 50,000 psi. No conduction Error – provides absolute temperature “Right-Angle” Ribbon Thermocouple
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Patented design Millisecond Response time Pressures to over 50,000 psi. No conduction Error – provides absolute temperature Temperatures > 2300 O C “Right-Angle” Ribbon Thermocouple
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Unique performance characteristics Thermocouple junction is thermally isolated from the thermowell / mounting fixture Thermowell can be designed with “radiation shield” for specific gas temperatures that are unaffected by chamber wall heating Thermall junction (ribbon) is parallel to isotherm Research applications include: Rocket nozzle exhaust gases Profile temperatures within chambers or pipelines Flat-bottom, bored holes within walls “Right-Angle” Thermocouples for Research “Right-Angle” Ribbon Exposed Junction
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Unique performance characteristics Thermal sensor can be “Isolated” for sanitary applications Various mounting configurations: In-wall, in-stream, adjustable immersion Cryogenic temperatures Industrial applications include: Gases or liquids in pipelines Mixers for food, propellant or pharmaceutical process Petrochemical systems Smoke stacks and exhaust pipes Installation into Mixer Wall, cutaway view “Right-Angle” Ribbon is mounted inside “Right-Angle” Thermocouples for Industry
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Combine multiple Eroding & Right-Angle thermocouples within a single housing Thermocouple housing made from test-wall material to replicate exact thermal properties Heat flux & heat transfer studies, Ablative materials research Surface measurements and in- wall temperatures at the same time As small as 1/2 Inch diameter Combine Eroding & Right- Angle sensors within one housing “Multi-Function” Thermocouples for Research
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Unique performance characteristics Temperatures to over 2300 O C Accurate to +/- ½ % of reading, even at 2000 O C Prolonged life in harsh environments – 10 times the life of standard sensors Up to 70 inches long Industrial applications include: Vacuum furnaces Graphite lined furnaces or furnaces with graphite heaters Petrochemical cracking furnace Heat treating and sintering Calibration, drift and uniformity & profile studies A12D Series – Ultra High Temp Available in all thermocouple calibrations, including Platinum and Tungsten Made to order in less than 3 weeks Ultra-High Temperature Thermocouples
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Awards & Recognition Nanmac Corporation Industry Awards Instrumentation, Systems & Automation Society (ISA) Top 20 New Products of the Year … One of the Top 20 New Products of the Year Materials in Design Engineering Best use of Engineering Materials … Best use of Engineering Materials Chemical Equipment Magazine Readers’ Choice Award for Editorial Contributions … Readers’ Choice Award for Editorial Contributions Publications Process Heating Magazine Selecting the Right Thermocouple” “Selecting the Right Thermocouple” Measurement and Control Magazine Thermal Sensor Characteristics” “Thermal Sensor Characteristics” Industrial Heating Magazine Myths and Facts About Temperature Sensing” “Myths and Facts About Temperature Sensing”
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Quality Quality program as per US Military Specification Q9858-A
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Quality Quality program as per US Military Specification Q9858-A Certified calibration in accordance with ASTM specification E220-02, traceable to National Institute of Standards and Technology (NIST)
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Quality Quality program as per US Military Specification Q9858-A Certified calibration in accordance with ASTM specification E220-02, traceable to National Institute of Standards and Technology (NIST) Calibration process in accordance with NIST Comparative Method capable of up to 1500 degrees centigrade
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Quality Quality program as per US Military Specification Q9858-A Certified calibration in accordance with ASTM specification E220-02, traceable to National Institute of Standards and Technology (NIST) Calibration process in accordance with NIST Comparative Method capable of up to 1500 degrees centigrade All thermocouple outputs certified to conform to IPTS 90
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Quality Quality program as per US Military Specification Q9858-A Certified calibration in accordance with ASTM specification E220-02, traceable to National Institute of Standards and Technology (NIST) Calibration process in accordance with NIST Comparative Method capable of up to 1500 degrees centigrade All thermocouple outputs certified to conform to IPTS 90 Pressure test lab utilizing High Pressure Equipment Company, Dynisco and Ashcroft equipment to 50,000 PSI
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Quality Quality program as per US Military Specification Q9858-A Certified calibration in accordance with ASTM specification E220-02, traceable to National Institute of Standards and Technology (NIST) Calibration process in accordance with NIST Comparative Method capable of up to 1500 degrees centigrade All thermocouple outputs certified to conform to IPTS 90 Pressure test lab utilizing High Pressure Equipment Company, Dynisco and Ashcroft equipment to 50,000 PSI Vacuum leak test utilizing Varian Systems equipment to 10 -7 Torr
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Quality Quality program as per US Military Specification Q9858-A Certified calibration in accordance with ASTM specification E220-02, traceable to National Institute of Standards and Technology (NIST) Calibration process in accordance with NIST Comparative Method capable of up to 1500 degrees centigrade All thermocouple outputs certified to conform to IPTS 90 Pressure test lab utilizing High Pressure Equipment Company, Dynisco and Ashcroft equipment to 50,000 PSI Vacuum leak test utilizing Varian Systems equipment to 10 -7 Torr Calibration & Test records on file for minimum of five years after date of manufacture
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Some of our customers 3M A1 Carbide ABB Corporate Research Abbott Labs Air Liquide America Alcoa Allied Aerospace ATK Thiokol Propulsion Bechtel BF Goodrich Boeing BTU Engineering Carnegie Mellon Research Institute Caterpillar Inc Coca ~ Cola Corning Dow Chemical Dupont ExxonMobil Ford Jet Propulsion Laboratory (JPL) Johnson & Johnson Massachusetts Institute of Technology (MIT) NASA Namiki Precision Jewel Raytheon Sandvik Hard Materials Union Carbide US Department of Defense US Naval Underwater Research Lab Weyerhaeuser Worcester Polytechnic Institute (WPI)
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We Are NANMAC QUALITY PERFORMANCE SOLUTIONS We Are NANMAC QUALITY PERFORMANCE SOLUTIONS
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